TEMPERATURE-UNIFORMING PLATE WITH SUPPORTING EFFECT
A temperature-uniforming plate with supporting effect includes a base plate and a cover plate mounted onto the base plate, wherein a frame is sandwiched between the base plate and the cover plate to define a vacuum chamber among the base plate, the cover plate and the frame. The frame has two arms inwardly extending therefrom and extending to a heat conducting area formed on the base plate. A passage is defined between the two arms. The two arms are clamped between a top surface of the base plane and a bottom surface of the cover plate. The temperature-uniforming plate has a thinning and simplified structure for easily formed, reducing manufacturing cost and providing a supporting effect.
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BACKGROUND OF THE INVENTION 1. Field of the InventionThe present invention relates to a temperature-uniforming plate, and more particularly to a temperature-uniforming plate that provides a supporting effect.
2. Description of Related Art Including Information Disclosed Under 37 CFR 1.97 and 37 CFR 1.98A conventional temperature-uniforming plate in accordance with the prior art shown in comprises a base plate and a cover plate respectively formed with a sidewall by stamping process. The base plate and the cover plate are separated to each other by the two sidewalls after being assembled. The structural strength of the conventional temperature-uniforming plate is strong enough to load a normal pressure when the conventional temperature-uniforming plate has a great volume and is made of thick metal sheet. However, the structure of the conventional temperature-uniforming plate may be weakened when the conventional temperature-uniforming plate is thinned and simplified.
In view of this, some manufacturers disposed capillary structures and supporting structure into the conventional temperature-uniforming plate. However, the flexural strength of the conventional temperature-uniforming plate is weakened and easily deformed due to a shearing force after being thinned.
The present invention has arisen to mitigate and/or obviate the disadvantages of the conventional temperature-uniforming plates.
BRIEF SUMMARY OF THE INVENTIONThe main objective of the present invention is to provide an improved temperature-uniforming plate that provides a supporting effect.
To achieve the objective, the temperature-uniforming plate in accordance with the present invention comprises a base plate formed with a heat conducting surface and a inside surface, wherein a contacting area is formed on the heat conducting surface 11 and abutted a heat source. A cover plate is mounted onto the base plate. The cover plate is formed with a top surface and a bottom surface. A frame 30 is sandwiched between the inside surface of the base plate and the bottom surface of the cover plate. A vacuum chamber is defined among the inside surface of the base plate, the bottom surface of the cover plate and an interior of the frame, wherein the vacuum chamber is provided for containing coolant. At least one capillary structure and at least one supporting structure are disposed in the vacuum chamber, wherein the at least one supporting structure has two opposite ends respectively abutting against the inside surface of the base plate and the bottom surface of the cover plate. Two arms respectively extend from the interior of the frame and correspond to each other, wherein each arm has a distal end separated from each other. The two arms are sandwiched between the inside surface of the base plate and the bottom surface of the cover plate. A passage is defined between the two distal ends of the two arms. The distal end of each of the two arms is situated within the contacting area.
Further benefits and advantages of the present invention will become apparent after a careful reading of the detailed description with appropriate reference to the accompanying drawings.
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The distal end 32 of each of the two arms 31 is situated within the contacting area 13 of the base plate 10 such that the temperature-uniforming plate in accordance with the present invention has a thinning and simplified structure for easily formed, reducing manufacturing cost and providing a supporting effect.
Although the invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.
Claims
1. A temperature-uniforming plate comprising:
- a base plate formed with a heat conducting surface and a inside surface, wherein a contacting area is formed on the heat conducting surface and adapted to be abutted a heat source;
- a cover plate mounted onto the base plate, the cover plate formed with a top surface and a bottom surface;
- a frame sandwiched between the inside surface of the base plate and the bottom surface of the cover plate;
- a vacuum chamber defined among the inside surface of the base plate, the bottom surface of the cover plate and an interior of the frame, wherein the vacuum chamber is provided for containing coolant; at least one capillary structure and at least one supporting structure disposed in the vacuum chamber, wherein the at least one supporting structure has two opposite ends respectively abutting against the inside surface of the base plate and the bottom surface of the cover plate;
- two arms respectively extending from the interior of the frame and corresponding to each other, wherein each arm has a distal end separated from each other, the two arms sandwiched between the inside surface of the base plate and the bottom surface of the cover plate; and
- a passage defined between the two distal ends of the two arms, the distal end of each of the two arms situated within the contacting area.
2. The temperature-uniforming plate as claimed in claim 1, wherein each arm has a branch laterally extending therefrom and the distal end is formed on a free end of the branch of each of the two arms.
3. The temperature-uniforming plate as claimed in claim 2, wherein the two distal ends corresponds to each other.
4. The temperature-uniforming plate as claimed in claim 3, wherein the branch of each of the two arms has a deputy passage defined in a top thereof.
5. The temperature-uniforming plate as claimed in claim 4, wherein each arm has an assembling hole, the base plate has two assembling holes defined therein and the cover plate has two assembling holes defined therein, and wherein the assembling hole in each of the two arms aligns with a corresponding one of the two assembling holes in the base plate and the cover plate.
6. The temperature-uniforming plate as claimed in claim 5, wherein the base plate has a sidewall peripherally extending therefrom and the cover plate has a sidewall wall peripherally extending therefrom, and wherein the two sidewalls abutted each other after being assembled.
7. The temperature-uniforming plate as claimed in claim 3, wherein the frame has a slot defined therein, the slot provided for making a vacuum status in the vacuum chamber and filling the coolant into the vacuum chamber, wherein the slot is closed by filler after filling the coolant into the vacuum chamber.
8. The temperature-uniforming plate as claimed in claim 4, wherein the frame has a slot defined therein, the slot provided for making a vacuum status in the vacuum chamber and filling the coolant into the vacuum chamber, wherein the slot is closed by filler after filling the coolant into the vacuum chamber.
9. The temperature-uniforming plate as claimed in claim 3, wherein the frame has a through hole laterally defined therein, the through hole provided for making a vacuum status in the vacuum chamber and filling coolant into the vacuum chamber, wherein the through hole is closed by filler after filling the coolant into the vacuum chamber.
10. The temperature-uniforming plate as claimed in claim 4, wherein the frame has a through hole laterally defined therein, the through hole provided for making a vacuum status in the vacuum chamber and filling coolant into the vacuum chamber, wherein the through hole is closed by filler after filling the coolant into the vacuum chamber.
11. The temperature-uniforming plate as claimed in claim 3, wherein the cover plate is formed with a raised portion such that a gap is defined between the cover plate and the frame, the gap provided for making a vacuum status in the vacuum chamber and filling coolant into the vacuum chamber, wherein the gap is closed by filler after filling the coolant into the vacuum chamber.
12. The temperature-uniforming plate as claimed in claim 4, wherein the cover plate is formed with a raised portion such that a gap is defined between the cover plate and the frame, the gap provided for making a vacuum status in the vacuum chamber and filling coolant into the vacuum chamber, wherein the gap is closed by filler after filling the coolant into the vacuum chamber.
Type: Application
Filed: May 5, 2017
Publication Date: Nov 8, 2018
Applicant: FORCECON TECHNOLOGY CO., LTD. (Zhubei City)
Inventors: Sin-Wei HE (Hsinchu), Chih-Ren HUANG (Zhubei City), Chao-Hao YEH (Zhubei City)
Application Number: 15/587,612